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48 results for L-spaces

In this paper, we analyze L-space surgeries on two component L-space links. We show that if one surgery coefficient is negative for the L-space surgery, then the corresponding link component is an unknot. If the link admits very negative (i.e. d1,d20d_{1}, d_{2}\ll0) L-space surgeries, it is the Hopf link. We also give a w…

2019-05-12abs ↗pdf ↗

An LL-space link is a link in S3S^3 on which all large surgeries are LL-spaces. In this paper, we initiate a general study of the definitions, properties, and examples of LL-space links. In particular, we find many hyperbolic LL-space links, including some chain links and two-bridge links; from them, we obtain many…

2014-08-30abs ↗pdf ↗

An oriented three-manifold with torus boundary admits either no L-space Dehn filling, a unique L-space filling, or an interval of L-space fillings. In the latter case, which we call "Floer simple," we construct an invariant which computes the interval of L-space filling slopes from the Turaev torsion and a given slope …

2015-08-24abs ↗pdf ↗

L-spaces were introduced by Ozsvath and Szabo using the Heegaard Floer Homology. In the quest for L-spaces we consider links of isolated complete intersection surface singularities. We show that if such a manifold is an L-space, then it is a link of a rational singularity. We also prove that if it is not an L-space the…

2005-05-17abs ↗pdf ↗

A knot in the 3-sphere is called an L--space knot if it admits a nontrivial Dehn surgery yielding an L--space. Like torus knots and Berge knots, many L--space knots admit also a Seifert fibered surgery. We give a concrete example of a hyperbolic, L-space knot which has no exceptional surgeries, in particular, no Seifer…

2014-10-15abs ↗pdf ↗

The paper explores fibered and quasi-positive links, introducing new families and invariants.

problem Understanding the structure of LL-space links and their properties.
method Using the H-function as a concordance link invariant.
result Introduced a subfamily of fibered strongly quasi-positive LL-space links and an infinite family of non-quasi-positive LL-space links.

New infinite family of hyperbolic L-space knots with specific semigroups.

problem Characterizing semigroups of L-space knots.
method Defined formal semigroups from Alexander polynomials and analyzed hyperbolic knots.
result Found an infinite family of hyperbolic L-space knots with semigroups generated by five elements.

An L-space link is a link in S3S^3 on which all sufficiently large integral surgeries are L-spaces. We prove that for m, n relatively prime, the r-component cable link Krm,rnK_{rm,rn} is an L-space link if and only if K is an L-space knot and n/m2g(K)1n/m \geq 2g(K)-1. We also compute HFL-minus and HFL-hat of an L-space cable lin…

2015-02-18abs ↗pdf ↗

Classifies LL-space surgeries on all two-bridge links

problem Classifying LL-space surgeries on two-bridge links
method Introduces a sufficient diagrammatic condition for links in S3S^3 to be persistently foliar, defines a simplified model for Heegaard Floer homology, and uses Turaev torsions for computations
result Determines LL-space surgeries in the case of generalised LL-space links

Study concordance of alternating torus knots to L-space knots.

problem When are linear combinations of alternating torus knots concordant to L-space knots?
method Proved Allen's conjecture for alternating torus knots and established a necessary condition.
result Linear combinations of alternating torus knots are concordant to L-space knots if and only if they are a single torus knot.

We introduce the notion of a strong L-space, a closed, oriented rational homology 3-sphere whose Heegaard Floer homology can be determined at the chain level. We prove that the fundamental group of a strong L-space is not left-orderable. Examples of strong L-spaces include the double branched covers of alternating link…

2011-10-04abs ↗pdf ↗

Let K be a knot in the 3--sphere. An r-surgery on K is left-orderable if the resulting 3--manifold K(r) of the surgery has left-orderable fundamental group, and an r-surgery on K is called an L-space surgery if K(r) is an L-space. A conjecture of Boyer, Gordon and Watson says that non-reducing surgeries on K can be cla…

2013-01-24abs ↗pdf ↗

It it known that the set of L-space surgeries on a nontrivial L-space knot is always bounded from below. However, already for two-component torus links the set of L-space surgeries might be unbounded from below. For algebraic two-component links we provide three complete characterizations for the boundedness from below…

2015-09-03abs ↗pdf ↗

Using Hirasawa-Murasugi's classification of fibered Montesinos knots we classify the L-space Montesinos knots, providing further evidence towards a conjecture of Lidman-Moore that L-space knots have no essential Conway spheres. In the process, we classify the fibered Montesinos knots whose open books support the tight …

2014-04-30abs ↗pdf ↗

Given an L-space knot we show that its Upsilon function is the Legendre transform of a counting function equivalent to the d-invariants of its large surgeries. The unknotting obstruction obtained for the Upsilon function is, in the case of L-space knots, contained in the d-invariants of large surgeries. Generalizations…

2015-05-25abs ↗pdf ↗

In this paper we look at the knot complement problem for L-space Z\mathbb{Z}-homology spheres. We show that an L-space Z\mathbb{Z}-homology sphere YY cannot be obtained as a non-trivial surgery along a knot KYK\subset Y. As a consequence, we prove that knots in an L-space Z\mathbb{Z}-homology sphere are determined …

2015-05-01abs ↗pdf ↗

Study extends contact cosmetic surgeries to non-trivial Legendrian knots in L-spaces.

problem Contact cosmetic surgeries for Legendrian knots in L-spaces.
method Adapting techniques from S3 to L-spaces, incorporating Heegaard Floer theory constraints.
result Contact cosmetic surgery conjecture holds for non-trivial Legendrian knots, except for Lagrangian slice knots.

A knot in the 3-sphere is called an L-space knot if it admits a nontrivial Dehn surgery yielding an L-space, i.e. a rational homology 3-sphere with the smallest possible Heegaard Floer homology. Given a knot K, take an unknotted circle c and twist K n times along c to obtain a twist family { K_n }. We give a sufficient…

2014-05-26abs ↗pdf ↗

New description of (1,1)(1,1) L-space knots leads to non-left-orderable surgeries.

problem Characterizing and understanding (1,1)(1,1) L-space knots.
method Analyzing coherent reduced (1,1)(1,1)-diagrams to describe (1,1)(1,1) L-space knots and proving non-left-orderable fundamental groups.
result Any L-space obtained by Dehn surgery on a (1,1)(1,1)-knot in S3S^3 has a non-left-orderable fundamental group.

Much work has been done recently towards trying to understand the topological significance of being an L-space. Building on work of Rasmussen and Rasmussen, we give a topological characterisation of Floer simple manifolds such that all non-longitudinal fillings are L-spaces. We use this to partially classify L-space tw…

2016-03-16abs ↗pdf ↗

Study on pretzel knots showing cyclic branched covers are L-spaces.

problem Understanding cyclic branched covers of pretzel knots and their properties.
method Analyzing pretzel knots KkK_k and their nn-fold cyclic branched covers for all n1n\geq 1.
result The nn-fold cyclic branched covers of pretzel knots KkK_k are L-spaces for all n1n\geq 1.

We show that quasi-alternating links arise naturally when considering surgery on a strongly invertible L-space knot (that is, a knot that yields an L-space for some Dehn surgery). In particular, we show that for many known classes of L-space knots, every sufficiently large surgery may be realized as the two-fold branch…

2009-10-02abs ↗pdf ↗

We find braid positive presentations for most L-space knots, except one, and explore related knot properties.

problem Characterizing L-space knots and their braid positivity.
method Examined SnapPy census knots, used HOMFLY polynomial analysis, and investigated Alexander polynomials.
result One L-space knot is not braid positive, and a 1-parameter family of hyperbolic L-space knots might not be.

A rational homology sphere whose Heegaard Floer homology is the same as that of a lens space is called an L-space. We classify pretzel knots with any number of tangles which admit L-space surgeries. This rests on Gabai's classification of fibered pretzel links.

2013-06-28abs ↗pdf ↗

We compute different versions of link Floer homology HFLHFL^{-} and HFL^\widehat{HFL} for any LL-space link with two components. The main approach is to compute the hh-function of the filtered chain complex which is determined by the Alexander polynomials of every sublink of the LL-space link. As an application, Thurst…

2017-04-08abs ↗pdf ↗

We characterize the (1, 1) knots in the three-sphere and lens spaces that admit non-trivial L-space surgeries. As a corollary, 1-bridge braids in these manifolds admit non- trivial L-space surgeries. We also recover a characterization of the Berge manifold amongst 1-bridge braid exteriors.

2016-10-16abs ↗pdf ↗